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一种腺相关病毒血清型10(AAVrh10)-鸡β-肌动蛋白启动子(CAG)-细胞色素P450 21A2(CYP21)-血凝素(HA)载体能够持续纠正Cyp21小鼠模型中的21-羟化酶缺乏症。

An AAVrh10-CAG-CYP21-HA vector allows persistent correction of 21-hydroxylase deficiency in a Cyp21 mouse model.

作者信息

Perdomini M, Dos Santos C, Goumeaux C, Blouin V, Bougnères P

机构信息

University Paris Saclay, Le Kremlin Bicêtre, France.

INSERM UMR 1169, Bicêtre Gregory Pincus, Le Kremlin Bicêtre, France.

出版信息

Gene Ther. 2017 May;24(5):275-281. doi: 10.1038/gt.2017.10. Epub 2017 Feb 6.

Abstract

The treatment of severe forms of 21-hydroxylase deficiency (21OHD) remains unsatisfactory in many respects. As a monogenic disease caused by loss-of-function mutations, 21OHD is a potential candidate for a gene therapy (GT) approach. The first step of GT is to demonstrate positive effects of the therapeutic vector in the Cyp21 mouse model. Thus, we tested the adrenal tropism of an AAVrh10-CAG-GFP vector ('GFP vector') then attempted to correct the phenotypic and biochemical alterations in Cyp21 mice using an AAVrh10-CAG-humanCYP21A2-HA vector ('CYP21 vector'). Cyp21 mice had decreased body mass, high progesterone (4 ×), impaired stress response, increased adrenal expression of genes involved in steroidogenesis or ACTH signaling. Following injection of the GFP vector, Cyp21 mice showed abundant GFP expression in the adrenal cortex. Intravenous injection of the therapeutic CYP21 vector allowed 21OH expression in adrenal tissue, resulting in increased body weight and near normalization of urinary progesterone for more than 15 weeks, improved response to stress and restoration of near-normal expression of (several important genes) in the adrenal cortex. The adrenal tropism of AAVrh10 and the persistent correction of phenotypic and biochemical traits in Cyp21 mice pave a first step on the way to GT of 21OHD in humans.

摘要

在许多方面,21-羟化酶缺乏症(21OHD)严重形式的治疗仍不尽人意。作为一种由功能丧失突变引起的单基因疾病,21OHD是基因治疗(GT)方法的潜在候选对象。GT的第一步是在Cyp21小鼠模型中证明治疗载体的积极作用。因此,我们测试了AAVrh10-CAG-GFP载体(“GFP载体”)的肾上腺嗜性,然后尝试使用AAVrh10-CAG-人CYP21A2-HA载体(“CYP21载体”)纠正Cyp21小鼠的表型和生化改变。Cyp21小鼠体重下降、孕酮水平升高(4倍)、应激反应受损、参与类固醇生成或促肾上腺皮质激素信号传导的基因在肾上腺中的表达增加。注射GFP载体后,Cyp21小鼠的肾上腺皮质中出现大量GFP表达。静脉注射治疗性CYP21载体可使肾上腺组织中表达21OH,导致体重增加,尿孕酮在15周以上接近正常水平,应激反应改善,肾上腺皮质中(几个重要基因)的表达恢复到接近正常水平。AAVrh10的肾上腺嗜性以及Cyp21小鼠表型和生化特征的持续纠正为人类21OHD的GT之路迈出了第一步。

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